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1.
为了阐明水稻Catalase(CAT)的酶学功能,首先需要获得出足量的、活性的该酶蛋白。本研究克隆了水稻OsCATB基因(GenBank accession No.D26484),构建到原核表达载体pGEX-6p-3中形成重组蛋白,继而转入E.coli菌株BL21中进行表达特性研究。结果表明,GST-OsCATB融合蛋白在E.coli中进行了过量表达,表达受到诱导剂浓度、诱导时间、诱导温度和诱导体系等多因素影响;通过谷胱甘肽Sepharose-4B亲合层析,纯化出足量、活性的融合蛋白GST-OsCATB,每克表达细胞(干重)中得率为51 mg GST-OsCATB。  相似文献   

2.
根据GenBank上已有的植物cat基因序列,设计一对兼并引物。在海南岛采集香蕉、巴西橡胶、黄灯笼辣椒、菠萝、甘蔗、番木瓜等作物的叶片并提取总RNA,反转录成cDNA,PCR进行同源克隆。结果获得了巴西橡胶cat-1和香蕉的cat-2基因,而未获得其它4种作物cat相关基因。序列分析发现,巴西橡胶cat-1和香蕉的cat-2基因开放阅读框(ORF)都为1 479 bp,编码492个氨基酸,GenBank登陆号分别为HQ660587和HQ660588。生物信息学软件分析巴西橡胶CAT-1和香蕉CAT-2蛋白的三级结构分别与Exiguobacteriu Oxidotolerans(PDB code:2j2mA0)和Pseudomonas Syringae(PDB code:1m7sA)相似。构建系统发育树表明巴西橡胶CAT-1与蓖麻CAT-1氨基酸序列(Ricinus communis:XP_002521709.1)同源性最高,为92.1%;香蕉CAT-2与油棕CAT-2氨基酸序列(Elaeis guineensis:ACF06566.1)同源性最高,达90.9%。  相似文献   

3.
通过实验从陇油6号油菜中克隆得到了一种新的MAPK激酶基因BnMKK2基因的cDNA,全长1 344 bp,其中包括5′非翻译区(5′UTR)111 bp,3′非翻译区(3′UTR)165 bp,开放阅读框(ORF)长1 068 bp,编码355个氨基酸,该基因编码的蛋白质分子量为39.3 kDa,理论等电点为6.8。与拟南芥AtMKK2有很高的同源性,因此命名为BnMKK2(GenBank登录号:HQ848661)。该基因实时荧光定量PCR分析表明,BnMKK2基因的表达受低温胁迫诱导。  相似文献   

4.
利用RT-PCR和RACE技术,从我国珍稀濒危植物金花茶花瓣中获得了黄酮醇合成酶(Flavonol synthase,FLS)基因的cDNA全长,命名为CnFLS,GenBank登录号JF343560.1。根据该基因序列设计全长扩增引物P3/P4进行PCR扩增,将扩增产物插入PMD18-T载体并转化克隆菌株DH5α,提取质粒DNA酶切鉴定,通过酶切连接的方法将该基因与改造后的pCAMBIA1300表达载体连接,成功构建了该基因的正义表达载体pCAM-CnFLS。根据该基因的保守序列设计了含有酶切位点的特异引物G1/G2,扩增出250 bp的干扰片段并将其克隆到PMD18-T载体,在中间载体pUCCRNAi及表达载体pCAMBIA1300的基础上,通过多次酶切连接,成功构建了金花茶FLS基因的干扰表达载体pCAMRNAi-CnFLS。金花茶正义及干扰植物表达载体的成功构建,为进一步研究该基因的功能及其对花色的调控效应奠定了基础。  相似文献   

5.
慈竹C3H基因克隆及其生物信息学分析   总被引:1,自引:1,他引:0  
香豆酸-3-羟化酶(C3H)是调控植物木质素生物合成的关键酶,本文以慈竹为材料,利用RT-PCR技术克隆慈竹C3H基因,并对其进行生物信息学分析,为通过基因工程手段降低工业用竹木质素含量奠定基础。结果表明,该cDNA序列全长为1 581 bp,编码区为1 539 bp,编码512个氨基酸,蛋白分子量为58.33KD,等电点为9.09;氨基酸序列和结构分析显示C3H有一个保守区域,即P450结构域。系统进化分析表明,该基因与毛竹和水稻的C3H基因具有很高的同源性。慈竹与毛竹和水稻C3H基因编码蛋白为亲水性蛋白,这三种编码蛋白很可能定位在内质网(膜)上,其编码蛋白的二级结构及三级结构都含有丰富的α-螺旋和无规卷曲,β-转角和延伸链的含量较少,都含有2个相对保守的无序化区域。该基因已在GenBank上注册,基因序列登录号为JF693629,可能与慈竹木质素的生物合成有关。  相似文献   

6.
高彬  张海燕  范海 《植物研究》2011,31(1):56-60
构建含有HPT的原核表达质粒,经诱导表达纯化后获得HPT抗体。从含有hpt的质粒pCambia1301上扩增目的基因,经SalⅠ和NotⅠ双酶切后与原核表达载体pET-28b(+)进行粘性末端连接,成功构建了pET-28b-hpt质粒,并转化到宿主细菌大肠杆菌Rosset(DE3)中进行蛋白表达。在异丙基硫代-β-D-半乳糖苷(IPTG)诱导下,pET-28b-hpt原核表达载体在E.coli Rosset菌株中以包涵体的形式高效表达了HPT蛋白,并以纯化的目的蛋白为抗原免疫兔制备了多克隆抗体。利用本方法可以获得特异性强、灵敏度高的多克隆抗体。  相似文献   

7.
拟南芥中RING型E3泛素连接酶基因AtGW2的克隆和功能分析   总被引:1,自引:0,他引:1  
水稻RING型E3泛素连接酶基因OsGW2在调控水稻产量性状方面起着十分重要的作用.根据OsGW2的cDNA序列,通过RT-PCR方法从拟南芥中克隆了一个与OsGW2同源的基因,命名为AtGW2.序列分析表明,该基因编码一个RING-C2型E3泛素连接酶蛋白,含有401个氨基酸.通过构建AtGW2 RNA干扰植物表达栽体并转化拟南芥,结果表明,获得的转基因后代植株的子粒较野生型大,并且转基因拟南芥子粒千粒重高于野生型,这表明AtGW2负调控拟南芥子粒大小及粒重.  相似文献   

8.
atpB基因编码ATP合酶β亚基,是光合作用中的重要基因。ATP合酶是生物体内能量代谢的关键酶,参与氧化磷酸化和光合磷酸化反应。利用植物叶绿体基因组在进化过程中高度保守的特点,根据已知植物烟草、水稻和菠菜等的叶绿体基因组全序列,设计并合成了一对引物,以甜菜叶绿体DNA为模板,PCR扩增得到包含atpB 完整基因(GenBank登录号为 DQ067451)在内的一段序列,测序与序列分析表明:该克隆片段全长2 293 bp,其中包括有1 497 bp的编码区序列,推测编码498个氨基酸。同源性比较,该克隆基因与烟草、菠菜、油菜、水稻atpB基因的核苷酸序列同源性分别为90.92%、95.79%、87.71%和86.37%,推测的氨基酸序列同源性分别为94.58%、97.19%、92.17%和91.97%。同时,建立了几种植物的氨基酸序列系统进化树。  相似文献   

9.
RING型E3泛素连接酶在植物应答非生物胁迫过程中发挥着重要功能。该研究从圆叶牵牛中克隆出RING型E3泛素连接酶基因PnLOG2,该基因序列号为XM_019321049.1。利用ORF Finder预测PnLOG2基因编码开放阅读框长度为912 bp (51~992 bp),编码313个氨基酸,蛋白分子质量34.38 kD,理论等电点为5.14。系统发育分析表明,PnLOG2基因与番茄亲缘关系最近。组织特异性分析表明,PnLOG2基因在牵牛不同组织均有表达,在老茎和新叶中表达量较高。qRT PCR分析结果表明,PnLOG2基因在圆叶牵牛根和叶中受干旱、盐碱胁迫诱导显著上调表达。通过异源表达PnLOG2基因于酵母细胞中,发现干旱、盐碱胁迫下PnLOG2基因提高了重组酵母的耐盐和耐旱能力,但降低了对碱的耐受性。该研究初步阐明了PnLOG2基因在干旱、盐碱胁迫下的功能,为进一步研究RING型E3泛素连接酶在非生物胁迫中的机理提供了理论依据。  相似文献   

10.
为了解2007 ― 2008 年北京地区流行的肠道病毒71 型( EV71) 是否存在基因序列变异及其与病毒毒力的关系, 我们选择2007 年分离的3 株EV71( 其中1 株分离自重症手足口病患儿的咽拭子标本, 其余2 株分离自普通手足口病患儿咽拭子标本) 和2008 年分离的5 株EV71( 其中3 株分离自重症手足口病患儿的咽拭子或鼻拭子标本, 2 株分离自普通手足口病患儿的疱疹液标本) , 提取基因组RNA, 经反转录-聚合酶链反应( RT-PCR) 扩增得到VP4 基因片段, 并进行核苷酸序列测定, 使用生物信息软件与GenBank 中的EV71 VP4 基因进行序列及病毒型别分析。结果表明, 所测得的8 株EV71 VP4 基因全长均为207 bp, 编码69 个氨基酸, 理论相对分子质量( Mr) 为7 ×103。8 株EV71 病毒VP4 基因的核苷酸同源性在94% ~100% , 与GenBank 中其他EV71 病毒株VP4 的核苷酸同源性为82% ~100% , 与阜阳、深圳和台湾等地区流行的EV71 VP4 的核苷酸同源性比其他地区高。除了与印度报道的VP4 编码的氨基酸在第7 和54 位不同外( 印度株: 7 位蛋氨酸, 54位苏氨酸; 其余株7 位苏氨酸,54 位丙氨酸) , 这8 株EV71 VP4 编码的氨基酸序列之间以及与其他EV71 VP4编码的氨基酸同源性均为100%。8 株EV71 病毒VP4 与文献报道的3 株重症感染病毒株VP4 ( BrCr、MS 和NCKU9822) 核苷酸有较大差别, 而8 株病毒株中从重症感染( BJ97、BJ110B、BJ110Y 和BJ4243) 与轻症感染( BJ25、BJ47、BJ65 和BJ67) 分离到的毒株之间VP4 基因序列未见明显改变, 只有几个核苷酸存在差别。VP4 核苷酸序列的进化树分析表明, 这8 株EV71 均属于C4 亚型, 显示2007 ― 2008 年北京地区流行的EV71的VP4 基因相当保守, 分离自伴有神经系统感染的重症手足口病和普通手足口病患儿的EV71 的VP4 基因之间在核苷酸水平未出现同样的变异。结果提示, 近2 年来北京地区所流行的EV71 属C4 亚型。  相似文献   

11.
The RAD6 (UBC2) gene of Saccharomyces cerevisiae which is involved in DNA repair, induced mutagenesis, and sporulation, encodes a ubiquitin-conjugating enzyme (E2). Since the RAD6 gene product can transfer ubiquitin directly to histones in vitro without the participation of a ubiquitin protein ligase (E3), it has been suggested that in vivo it also acts by the unassisted conjugation of ubiquitin to histones or to other target proteins. Here we show that the RAD6 protein can ligate ubiquitin in vitro to a hitherto unknown set of exogenous target proteins (alpha-, beta-, and kappa-casein and beta-lactoglobulin) when supplemented by a putative ubiquitin protein ligase (E3-R) from S. cerevisiae. RAD6 supplemented with E3-R ligates 1 or, sometimes, 2 ubiquitin molecules to the target protein molecule. UBC3 (CDC34) protein in the presence of E3-R has barely detectable activity on the non-histone substrates. Other ubiquitin-conjugating enzymes tested (products of the UBC1 and UBC4 genes) do not cooperate with E3-R in conjugating ubiquitin to the same substrates. Thus, E3-R apparently interacts selectively with RAD6 protein. These findings suggest that some of the in vivo activities of the RAD6 gene may involve E3-R.  相似文献   

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14.
Lee DH  Choi HW  Hwang BK 《Plant physiology》2011,156(4):2011-2025
Ubiquitination is essential for ubiquitin/proteasome-mediated protein degradation in plant development and defense. Here, we identified a novel E3 ubiquitin ligase RING1 gene, CaRING1, from pepper (Capsicum annuum). In pepper, CaRING1 expression is induced by avirulent Xanthomonas campestris pv vesicatoria infection. CaRING1 contains an amino-terminal transmembrane domain and a carboxyl-terminal RING domain. In addition, it displays in vitro E3 ubiquitin ligase activity, and the RING domain is essential for E3 ubiquitin ligase activity in CaRING1. CaRING1 also localizes to the plasma membrane. In pepper plants, virus-induced gene silencing of CaRING1 confers enhanced susceptibility to avirulent X. campestris pv vesicatoria infection, which is accompanied by compromised hypersensitive cell death, reduced expression of PATHOGENESIS-RELATED1, and lowered salicylic acid levels in leaves. Transient expression of CaRING1 in pepper leaves induces cell death and the defense response that requires the E3 ubiquitin ligase activity of CaRING1. By contrast, overexpression of CaRING1 in Arabidopsis (Arabidopsis thaliana) confers enhanced resistance to hemibiotrophic Pseudomonas syringae pv tomato and biotrophic Hyaloperonospora arabidopsidis infections. Taken together, these results suggest that CaRING1 is involved in the induction of cell death and the regulation of ubiquitination during the defense response to microbial pathogens.  相似文献   

15.
Damaged mitochondria are eliminated through autophagy machinery. A cytosolic E3 ubiquitin ligase Parkin, a gene product mutated in familial Parkinsonism, is essential for this pathway. Recent progress has revealed that phosphorylation of both Parkin and ubiquitin at Ser65 by PINK1 are crucial for activation and recruitment of Parkin to the damaged mitochondria. However, the mechanism by which phosphorylated ubiquitin associates with and activates phosphorylated Parkin E3 ligase activity remains largely unknown. Here, we analyze interactions between phosphorylated forms of both Parkin and ubiquitin at a spatial resolution of the amino acid residue by site-specific photo-crosslinking. We reveal that the in-between-RING (IBR) domain along with RING1 domain of Parkin preferentially binds to ubiquitin in a phosphorylation-dependent manner. Furthermore, another approach, the Fluoppi (fluorescent-based technology detecting protein-protein interaction) assay, also showed that pathogenic mutations in these domains blocked interactions with phosphomimetic ubiquitin in mammalian cells. Molecular modeling based on the site-specific photo-crosslinking interaction map combined with mass spectrometry strongly suggests that a novel binding mechanism between Parkin and ubiquitin leads to a Parkin conformational change with subsequent activation of Parkin E3 ligase activity.  相似文献   

16.
Autoantigen Ro52 is an E3 ubiquitin ligase   总被引:2,自引:0,他引:2  
Anti-Ro/SSA antibodies are classic autoantibodies commonly found in patients with Sj?gren's syndrome, a chronic autoimmune disease characterized by dryness of the eyes and mouth. The autoantibodies recognize a RING-finger protein, Ro52, whose function is still unknown. Since many RING-finger proteins have been identified as E3 ubiquitin ligases, this study was designed to determine whether Ro52 functions as an E3 ubiquitin ligase. For this purpose, recombinant Ro52 was purified from bacterial lysate and used to investigate its activity of E3 ubiquitin ligase in vitro. Its enzymatic activity was also tested in HEK293T cells using wild-type Ro52 and its RING-finger mutant. Our results indicated that Ro52 ubiquitinates itself in cooperation with E2 ubiquitin-conjugating enzyme UbcH5B, thereby validating that Ro52 is a RING-finger-type E3 ubiquitin ligase. Importantly, this ubiquitin modification is predominantly monoubiquitination, which does not target Ro52 to the proteasome for degradation.  相似文献   

17.
Enterohemorrhagic Escherichia coli (EHEC) O157:H7 causes hemorrhagic colitis and may result in potentially fatal hemolytic uremia syndrome in humans. EHEC colonize the intestinal mucosa and promote the formation of actin-rich pedestals via translocated type III effectors. Two EHEC type III secreted effectors, Tir and EspFu/TccP, are key players for pedestal formation. We discovered that an EHEC effector protein called Non-LEE-encoded Ligase (NleL) is an E3 ubiquitin ligase. In vitro, we showed that the NleL C753 residue is critical for its E3 ligase activity. Functionally, we demonstrated that NleL E3 ubiquitin ligase activity is involved in modulating Tir-mediated pedestal formation. Surprisingly, EHEC mutant strain deficient in the E3 ligase activity induced more pedestals than the wild-type strain. The canonical EPEC strain E2348/69 normally lacks the nleL gene, and the ectopic expression of the wild-type EHEC nleL, but not the catalytically-deficient nleL(C753A) mutant, in this strain resulted in fewer actin-rich pedestals. Furthermore, we showed that the C. rodentium NleL homolog is a E3 ubiquitin ligase and is required for efficient infection of murine colonic epithelial cells in vivo. In summary, our study demonstrated that EHEC utilizes NleL E3 ubiquitin ligase activity to modulate Tir-mediated pedestal formation.  相似文献   

18.
The protein substrate binding site of the ubiquitin-protein ligase system   总被引:13,自引:0,他引:13  
In order to gain insight into the mechanisms that determine the selectivity of the ubiquitin proteolytic pathway, the protein substrate binding site of the ubiquitin-protein ligase system was identified and examined. Previous studies had shown that the ligase system consists of three components: a ubiquitin-activating enzyme (E1), ubiquitin-carrier protein (E2), and a third enzyme, E3, the mode of action of which has not been defined. E3 from rabbit reticulocytes was further purified by a combination of affinity chromatography, hydrophobic chromatography, and gel filtration procedures. A 180-kDa protein was identified as the subunit of E3. Two independent methods indicate that E3 has the protein binding site of the ubiquitin ligase system. These are the chemical cross-linking of 125I-labeled proteins to the E3 subunit and the functional conversion of enzyme-bound labeled proteins to ubiquitin conjugates in pulse-chase experiments. The trapping of E3-bound protein for labeled product formation was allowed by the slow dissociation of E3 X protein complex. The specificity of binding of different proteins to E3, examined by both methods, showed a direct correlation with their susceptibility to degradation by the ubiquitin system. Proteins with free alpha-NH2 groups, which are good substrates, bind better to E3 than corresponding proteins with blocked NH2 termini, which are not substrates. Oxidation of methionine residues to sulfoxide derivatives greatly increases the susceptibility of some proteins to ligation with ubiquitin, with a corresponding increase in their binding to E3. However, a protein derivative which was subjected to both amino group modification and oxidation binds strongly to the enzyme, even though it cannot be ligated to ubiquitin. It thus seems that the substrate binding site of E3 participates in determining the specificity of proteins that enter the ubiquitin pathway of protein degradation.  相似文献   

19.
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